Cracking the bioelectric code: Probing endogenous ionic controls of pattern formation

Communicative and Integrative Biology - Tập 6 Số 1 - Trang e22595 - 2013
Ai‐Sun Tseng1,2, Michael Levin1,2
1Department of Biology and Tufts Center for Regenerative and Developmental Biology
2Medford, MA USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Lund E. Bioelectric fields and growth. Austin: Univ. of Texas Press, 1947.

Levin, 2012, Regulation of cell behavior and tissue patterning by bioelectrical signals: challenges and opportunities for biomedical engineering, Annu Rev Biomed Eng, 14, 295, 10.1146/annurev-bioeng-071811-150114

Robinson K, Messerli M. Electric embryos: the embryonic epithelium as a generator of developmental information. In: McCaig C, ed. Nerve Growth and Guidance. Portland: Portland Press, 1996:131-41.

Nuccitelli, 1986, On electrical currents in development, Bioessays, 5, 292, 10.1002/bies.950050616

Nuccitelli, 1992, Endogenous ionic currents and DC electric fields in multicellular animal tissues, Bioelectromagnetics, 147, 10.1002/bem.2250130714

Robinson, 2003, Left/right, up/down: the role of endogenous electrical fields as directional signals in development, repair and invasion, Bioessays, 25, 759, 10.1002/bies.10307

Jaffe LF. Control of development by ionic currents. In: Cone RA, and John E. Dowling, eds., ed. Membrane Transduction Mechanisms. New York: Raven Press, 1979.

Reid, 2011, Ion-selective self-referencing probes for measuring specific ion flux, Commun Integr Biol, 4, 524, 10.4161/cib.16182

Levin, 2009, Bioelectric mechanisms in regeneration: Unique aspects and future perspectives, Semin Cell Dev Biol, 20, 543, 10.1016/j.semcdb.2009.04.013

Levin, 2007, Large-scale biophysics: ion flows and regeneration, Trends Cell Biol, 17, 261, 10.1016/j.tcb.2007.04.007

Blackiston, 2009, Bioelectric controls of cell proliferation: ion channels, membrane voltage and the cell cycle, Cell Cycle, 8, 3519, 10.4161/cc.8.21.9888

Yao, 2009, Electrical signals polarize neuronal organelles, direct neuron migration, and orient cell division, Hippocampus, 19, 855, 10.1002/hipo.20569

McCaig, 2009, Electrical dimensions in cell science, J Cell Sci, 122, 4267, 10.1242/jcs.023564

Levin, 2012, Molecular bioelectricity in developmental biology: new tools and recent discoveries: control of cell behavior and pattern formation by transmembrane potential gradients, Bioessays, 34, 205, 10.1002/bies.201100136

Levin, 2012, Morphogenetic fields in embryogenesis, regeneration, and cancer: non-local control of complex patterning, Biosystems, 109, 243, 10.1016/j.biosystems.2012.04.005

Burr, 1935, The electro-dynamic theory of life, Q Rev Biol, 10, 322, 10.1086/394488

Shi, 1995, Three-dimensional gradients of voltage during development of the nervous system as invisible coordinates for the establishment of embryonic pattern, Dev Dyn, 202, 101, 10.1002/aja.1002020202

Beane, 2011, A chemical genetics approach reveals H,K-ATPase-mediated membrane voltage is required for planarian head regeneration, Chem Biol, 18, 77, 10.1016/j.chembiol.2010.11.012

Pai, 2012, Transmembrane voltage potential controls embryonic eye patterning in Xenopus laevis, Development, 139, 313, 10.1242/dev.073759

Zhao, 2006, Electrical signals control wound healing through phosphatidylinositol-3-OH kinase-gamma and PTEN, Nature, 442, 457, 10.1038/nature04925

Tseng, 2010, Induction of vertebrate regeneration by a transient sodium current, J Neurosci, 30, 13192, 10.1523/JNEUROSCI.3315-10.2010

Adams, 2007, H+ pump-dependent changes in membrane voltage are an early mechanism necessary and sufficient to induce Xenopus tail regeneration, Development, 134, 1323, 10.1242/dev.02812

Blackiston, 2011, Transmembrane potential of GlyCl-expressing instructor cells induces a neoplastic-like conversion of melanocytes via a serotonergic pathway, Dis Model Mech, 4, 67, 10.1242/dmm.005561

Morokuma, 2008, Modulation of potassium channel function confers a hyperproliferative invasive phenotype on embryonic stem cells, Proc Natl Acad Sci USA, 105, 16608, 10.1073/pnas.0808328105

Levin, 2006, Is the early left-right axis like a plant, a kidney, or a neuron? The integration of physiological signals in embryonic asymmetry, Birth Defects Res C Embryo Today, 78, 191, 10.1002/bdrc.20078

Levin, 2002, Asymmetries in H+/K+-ATPase and cell membrane potentials comprise a very early step in left-right patterning, Cell, 111, 77, 10.1016/S0092-8674(02)00939-X

Sundelacruz, 2008, Membrane potential controls adipogenic and osteogenic differentiation of mesenchymal stem cells, PLoS ONE, 3, e3737, 10.1371/journal.pone.0003737

Lange, 2011, The H(+) vacuolar ATPase maintains neural stem cells in the developing mouse cortex, Stem Cells Dev, 20, 843, 10.1089/scd.2010.0484

Tseng, 2012, Transducing bioelectric signals into epigenetic pathways during tadpole tail regeneration, Anat Rec, 10.1002/ar.22495

Adams, 2006, Early, H+-V-ATPase-dependent proton flux is necessary for consistent left-right patterning of non-mammalian vertebrates, Development, 133, 1657, 10.1242/dev.02341

Fukumoto, 2005, Serotonin signaling is a very early step in patterning of the left-right axis in chick and frog embryos, Curr Biol, 15, 794, 10.1016/j.cub.2005.03.044

Tseng, 2011, HDAC activity is required during Xenopus tail regeneration, PLoS ONE, 6, e26382, 10.1371/journal.pone.0026382

Carneiro, 2011, Histone deacetylase activity is necessary for left-right patterning during vertebrate development, BMC Dev Biol, 11, 29, 10.1186/1471-213X-11-29

Aw, 2008, H,K-ATPase protein localization and Kir4.1 function reveal concordance of three axes during early determination of left-right asymmetry, Mech Dev, 125, 353, 10.1016/j.mod.2007.10.011

Vandenberg, 2011, V-ATPase-dependent ectodermal voltage and pH regionalization are required for craniofacial morphogenesis, Dev Dyn, 240, 1889, 10.1002/dvdy.22685

Adams, 2012, General principles for measuring resting membrane potential and ion concentration using fluorescent bioelectricity reporters, Cold Spring Harb Protoc, 2012, 385

Adams, 2012, Endogenous voltage gradients as mediators of cell-cell communication: strategies for investigating bioelectrical signals during pattern formation, Cell Tissue Res

Burr, 1937, Bio-Electric Correlates of Development in Amblystoma, Yale J Biol Med, 9, 540

Burr, 1939, Evidence for the Existence of an Electro-Dynamic Field in Living Organisms, Proc Natl Acad Sci USA, 25, 284, 10.1073/pnas.25.6.284

Fenno, 2011, The development and application of optogenetics, Annu Rev Neurosci, 34, 389, 10.1146/annurev-neuro-061010-113817

Levin, 2011, The wisdom of the body: future techniques and approaches to morphogenetic fields in regenerative medicine, developmental biology and cancer, Regen Med, 6, 667, 10.2217/rme.11.69

Fortin, 2011, Engineering light-regulated ion channels, Cold Spring Harb Protoc, 2011, 579, 10.1101/pdb.top112

Fortin, 2011, Optogenetic photochemical control of designer K+ channels in mammalian neurons, J Neurophysiol, 106, 488, 10.1152/jn.00251.2011

Regot, 2011, Distributed biological computation with multicellular engineered networks, Nature, 469, 207, 10.1038/nature09679

Bashor, 2010, Rewiring cells: synthetic biology as a tool to interrogate the organizational principles of living systems, Annu Rev Biophys, 39, 515, 10.1146/annurev.biophys.050708.133652

Hauser, 2012, Towards a theoretical foundation for morphological computation with compliant bodies, Biol Cybern, 10.1007/s00422-012-0516-4

Boettiger, 2009, The neural origins of shell structure and pattern in aquatic mollusks, Proc Natl Acad Sci USA, 106, 6837, 10.1073/pnas.0810311106

Blomstrand, 1999, Extent of intercellular calcium wave propagation is related to gap junction permeability and level of connexin-43 expression in astrocytes in primary cultures from four brain regions, Neuroscience, 92, 255, 10.1016/S0306-4522(98)00738-6

Pannasch, 2011, Astroglial networks scale synaptic activity and plasticity, Proc Natl Acad Sci USA, 108, 8467, 10.1073/pnas.1016650108

Turner, 2002, Do bone cells behave like a neuronal network?, Calcif Tissue Int, 70, 435, 10.1007/s00223-001-1024-z

Volkov, 2008, Plant electrical memory, Plant Signal Behav, 3, 490, 10.4161/psb.3.7.5684

Vandenberg, 2012, Normalized shape and location of perturbed craniofacial structures in the Xenopus tadpole reveal an innate ability to achieve correct morphology, Dev Dyn, 241, 863, 10.1002/dvdy.23770

Gallaher, 2010, First order phase transition and hysteresis in a cell’s maintenance of the membrane potential--An essential role for the inward potassium rectifiers, Biosystems, 101, 149, 10.1016/j.biosystems.2010.05.007